Department of Oral and Maxillofacial Surgery, Selçuk University Faculty of Dentistry, Konya, Turkey.
Department of Mechanics of Materials, Selçuk University Faculty of Technology, Konya, Turkey.
Comput Methods Biomech Biomed Engin. 2024 Jan-Mar;27(4):489-497. doi: 10.1080/10255842.2023.2188105. Epub 2023 Mar 15.
The purpose of this study is to compare biplanar custom mandibular reconstruction plates with locking reconstruction plates in bridging central and lateral mandibular segmental defects by using the finite element method. Central and two different types of lateral segmental defects were created on mandibular model that was generated from computed tomography of a male patient. Segmental defects were fixed with conventional locking reconstruction plates and two different custom designed plates with caudobuccal and dorsobuccal cover. Stress formation on hardware and screws, strain on bone under masticatory simulation were evaluated with a finite element model. The stress values on plate and screws were higher in conventional reconstruction plate than custom plates. Simulations of central segmental defect revealed maximum von Mises stresses of 643.62 MPa and 101.83 MPa in conventional reconstruction plate and biplanar plate, respectively. Biplanar plates revealed slightly higher von Mises stresses than extended surfaced biplanar plates. The screws close to resection area were exposed to higher stress than farther screws for whole groups. In conventional reconstruction plate, the maximum von Mises stress values of fixation screws were 268.66 MPa and 95 MPa for central segmental defect and lateral segmental defect, respectively. The study reveals that the biplanar custom reconstruction plates had a favourable effect on stress distribution and can enhance function and aesthetics as supporting mandible and flaps from two different planes.
本研究旨在通过有限元法比较双平面定制下颌骨重建板与锁定重建板在桥接下颌骨中央和侧段缺损中的应用。从一名男性患者的计算机断层扫描中生成下颌骨模型,在该模型上创建中央和两种不同类型的侧段缺损。使用传统锁定重建板和两种不同的定制设计的板(颊侧和颊后覆盖)固定节段性缺损。通过有限元模型评估硬件和螺钉上的应力形成以及咀嚼模拟下的骨应变。与传统重建板相比,定制板上的板和螺钉的应力值更高。中央节段性缺损模拟显示,传统重建板和双平面板的最大 von Mises 应力分别为 643.62 MPa 和 101.83 MPa。双平面板的 von Mises 应力略高于扩展表面双平面板。对于所有组,靠近切除区域的螺钉比更远的螺钉暴露于更高的应力。在传统重建板中,中央节段性缺损和侧段性缺损的固定螺钉的最大 von Mises 应力值分别为 268.66 MPa 和 95 MPa。研究表明,双平面定制重建板对应力分布有有利影响,并可通过从两个不同平面支撑下颌骨和皮瓣来增强功能和美观。